论文标题

非输入聚苯乙烯和聚乙烷氧化星融化的动力异质性

Dynamical heterogeneities in non-entangled polystyrene and poly(ethylene oxide) star melts

论文作者

Bačová, Petra, Gkolfi, Eirini, Hawke, Laurence G. D., Harmandaris, Vagelis

论文摘要

由于其内部结构,恒星聚合物可以表现出异质的动力学行为。在这项工作中,我们采用原子分子动力学模拟来研究非输入的聚苯乙烯和聚(氧化乙烷)星形熔体中的平移运动。我们专注于始于多臂星形结构的局部异质动力学,并量化分子内动力学梯度。通过检查Kuhn长度顺序的长度尺度的翻译运动,我们旨在为研究化学分子找到共同的特征,并与聚合物动力学的理论模型进行关键,直接的比较。我们讨论了有关针对星形架构调整的连续劳斯模型的观察到的趋势。检查了两个版本的Rouse模型:一个假设每个Rouse珠上均匀的摩擦,另一个考虑一个考虑更大的分支点摩擦。除了相邻珠子之间的链连接外,这两个版本都无视链之间的相互作用。尽管对仿真数据有可忍受的描述,但似乎都没有模型准确地反映了移动性梯度。这里采用的详细定量原子模型桥接了缺乏必不可少的化学细节的星状聚合物的理论和一般粗颗粒模型之间的差距。

Star polymers can exhibit a heterogeneous dynamical behavior due to their internal structure. In this work we employ atomistic molecular dynamics simulations to study translational motion in non-entangled polystyrene and poly(ethylene oxide) star-shaped melts. We focus on the local heterogeneous dynamics originating from the multi-arm star-like architecture and quantify the intramolecular dynamical gradient. By examining the translational motion at length scales of the order of the Kuhn length, we aim to find common features for both studied chemistries and to provide a critical and direct comparison with theoretical models of polymer dynamics. We discuss the observed tendencies with respect to the continuous Rouse model adjusted for the star-like architectures. Two versions of the Rouse model are examined: one assuming uniform friction on every Rouse bead and another one considering larger branch point friction. Apart from chain connectivity between neighboring beads, both versions disregard interactions between the chains. Despite the tolerable description of the simulation data, neither model appears to reflect the mobility gradient accurately. The detailed quantitative atomistic models employed here bridge the gap between the theoretical and general, coarse-granined models of star-like polymers which lack the indispensable chemical details.

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